Mevalonate kinase deficiency (MKD) is an autosomal recessive autoinflammatory disorder caused by mutations in the MVK gene resulting in deficient activity of mevalonate kinase (MK). Depending on the clinical severity, MKD may present as hyper-IgD and periodic fever syndrome (HIDS) or the more severe mevalonic aciduria (MA). We analyzed the MVK gene in 57 patients with MKD and found 39 different mutations including 15 novel mutations, expanding the total mutational spectrum of MKD to 63 mutations. To get more insight into the genotype-phenotype correlation in MKD, we studied the effect of selected missense mutations on MK protein stability and activity in various patient fibroblast cell lines. All MKD cell lines showed markedly decreased MK activities that correlated well with the clinical severity and, for most of the cell lines, with the amount of MK protein. When fibroblasts of MKD patients were cultured under conditions known to promote a more controlled protein folding, all cell lines of patients with the HIDS phenotype and few cell lines of patients with the MA phenotype showed an increase in the residual MK activity. This increase in enzyme activity correlates well with an increase in the MK protein levels in these cell lines, indicating that most of the mutations in MKD affect stability and/or folding of the MK protein rather than affecting the catalytic properties of the enzyme. The finding that the residual activity in MKD can be manipulated by environmental conditions may offer therapeutic options to alleviate or prevent the clinical symptoms associated with MKD.

译文

甲羟戊酸激酶缺乏症 (MKD) 是由MVK基因突变引起的常染色体隐性自身炎症性疾病,导致甲羟戊酸激酶 (MK) 活性不足。根据临床严重程度,MKD可能表现为高IgD和周期性发热综合征 (HIDS) 或更严重的甲valonic酸尿症 (MA)。我们分析了57例MKD患者的MVK基因,发现了39个不同的突变,包括15个新突变,将MKD的总突变谱扩展到63个突变。为了更深入地了解MKD中的基因型-表型相关性,我们研究了选定的错义突变对各种患者成纤维细胞系中MK蛋白稳定性和活性的影响。所有MKD细胞系均显示出显着降低的MK活性,这与临床严重程度以及大多数细胞系与MK蛋白的含量密切相关。当在已知促进蛋白质折叠的条件下培养MKD患者的成纤维细胞时,具有HIDS表型的患者的所有细胞系和具有MA表型的患者的少数细胞系均显示出残留的MK活性增加。酶活性的增加与这些细胞系中MK蛋白水平的增加非常相关,这表明MKD中的大多数突变会影响MK蛋白的稳定性和/或折叠,而不是影响酶的催化特性。MKD中残留活性可以通过环境条件控制的发现可能为减轻或预防与MKD相关的临床症状提供治疗选择。

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